[0001] The present invention relates to a male-female fitting element, suitable in particular
for hoses having a large diameter.
[0002] There are known and are commonly used for small flexible hoses male-female fittings
wherein the male element is held by small radial pawls urged by elastic means interposed
between an internal cylindrical part of the female element and a sleeve which is axially
slideable on said internal part.
[0003] For hoses having a large diameter (typically one inch), fittings having the same
structural and operational characteristics of the fittings used for smaller diameter
hoses (say, half an inch) there are several problems.
[0004] The first problem is the size of such fittings, which may make their use not all
that easy.
[0005] There are also problems connected with the plastic material of which said fittings
are made; if the thickness of the plastic is large it is necessary to use special
dies and the cost of the material increases. If the thickness of the plastic remains
small significant deformations may occur due to the lower resistance of the plastic;
there are also dangers of breakage or of undesired clearances.
[0006] In addition the typical coupling of small-diameter hose fittings, with two or three
small pawls, is not that safe for fittings having a larger diameter.
[0007] Another drawback is due to the fact that in large hoses there is a low pressure and
a high delivery, so that constricting the cross-section is particularly undesirable;
with the usual fittings for small hoses, transformed into large fittings, there would
be a constriction at the point where the hose is connected, and another constriction
at the entrance of the male element.
[0008] Lastly, there exists a considerable disproportion between the external dimensions
of the fitting and the actual internal cross-section available for the passage of
the fluid, which would be substantially reduced.
[0009] A male-female fitting element is disclosed in EP-A-99033 and comprises a male element
having radially protruding ribs and a female element having inner grooves for engagement
with said ribs of the male element upon invention and rotation of the male element
in the female element.
[0010] The object of the present invention is to obtain a fitting with a reduced external
size, which is simple to use, which has the highest degree of coupling safety, which
is easy to manufacture and which avoids fluid pressure losses.
[0011] According to the invention such object is attained with a male-female fitting element,
constituted by a male element, comprising a hollow cylindrical tang having in the
axial direction a plurality of radially protruding ribs, and by a female element,
essentially constituted by a hollow cylindrical casing with an internal wall provided
with a corresponding plurality of axial grooves for the sliding reception of said
ribs of the male element, each of said grooves being flanked by a lateral seat suitable
for receiving one of said respective ribs by rotation of said male element at the
end of the sliding of said ribs in said grooves, so that said ribs are held in the
respective seats by the abutment of an extremity of the rib against a shoulder of
said lateral seat, in the female element there being introduced a Belleville washer,
located at the extremity opposite to the extremity for the entry of male element,
the shoulder of each lateral seat being shaped in circumferential direction according
to an inclined plane and one extremity of each corresponding rib being shaped in circumferential
direction according to two inclined planes of opposite inclination.
[0012] To provide for a safer coupling of the two male and female elements even under high
releasing forces due either to the pressure of the water or to any twisting actions
exerted manually on the hose attached to the female element of the fitting, it can
also be arranged that the female element be provided with a locking device, which
thanks to a small pawl suitably urged from the outside goes to co-operate with a rib
of the male element to prevent its contrary rotation and the latter's consequent possible
release.
[0013] The characteristics of the present invention shall be made clearer by the following
detailed description of two of its practical embodiments, illustrated as a non-limiting
example in the enclosed drawings, wherein:
Fig. 1 shows a perspective view of a fitting element according to the invention, with
the male element separated from the female element;
Fig. 2 shows a cross-section of the fitting element taken along the line II-II of
Fig. 3, when the male element is inserted into the female element in a non-rotated
position;
Fig. 3 shows a transversal cross-section of the fitting taken along the line III-III
of Fig. 2;
Fig. 4 shows a transversal cross-section of the fitting taken along the line IV-IV
of Fig. 2;
Fig. 5 shows a transversal cross-section of the fitting as in Fig. 3 when the male
element is rotated in the locked position;
Fig. 6 shows an axial cross-section of the fitting taken along the line VI-VI of Fig.
5;
Fig.s 7, 8 and 9 show the sequence of actions which lead to the rotated position of
the fitting;
Fig.s 10, 11 and 12 show the sequence of the actions which allow the release of the
fitting;
Fig. 13 shows the external lateral view of a variant of the fitting of Fig.s 1 to
12, which provides for the addition of a device for locking the reciprocal rotation
of the male element and of the female element of the fitting;
Fig. 14 shows the fitting of Fig. 13 in an axial cross-section taken along the line
XIV-XIV of Fig.s 13 and 16 with the locking device in the active position;
Fig. 15 shows the same fitting in an axial cross-section as in Fig. 14 but with the
locking device in the inactive position, and the male element of the fitting rotated
in the position suitable for releasing the female element;
Fig. 16 shows said fitting in a transversal cross-section taken along the line XVI-XVI
of Fig. 14;
Fig. 17 shows said fitting in a transversal cross-section taken along the line XVII-XVII
of Fig. 15;
Fig. 18 shows the enlarged detail, in a cross-section taken along the line XVIII-XVIII
of Fig. 16, of the locking engagement attained by the locking device when in the active
position;
Fig.s 19 to 22 show the locking device from the outside, from the inside, from the
side and from the front of the fitting, respectively.
[0014] With reference to the drawings, the fitting of Fig.s 1 to 12 comprises a male element
1 and a female element 2 which can be coupled together.
[0015] Said male element 1 is, as an example, constituted by a base 3 provided with an internal
thread 22, suitable for fastening it to a water hydrant, and by a hollow cylindrical
tang 4, on which there is a plurality of ribs 5, arranged in an axial direction and
protruding radially; each of said ribs 5 has an extremity 15 shaped according to two
inclined planes, forming a first inclined part 101, and a second inclined part 102.
[0016] The female element 2 has an extremity 6, of known shape, for coupling it to a flexible
hose 20, and an extremity 7, constituted by a first external sleeve 8 and a second
internal sleeve 9. On the internal wall 21 of said internal sleeve 9 of the female
element 2 there is a plurality of grooves 10, having a length which is greater than
that of said ribs 5, constituted by a first part 11, nearer the entry extremity of
male element 1, and by a second part 12; this second part 12 of each of said grooves
10 is flanked by a lateral seat 13, having a shoulder 14 shaped according to an inclined
plane.
[0017] The female element 2 is provided with a Belleville washer 16, located at the extremity
opposite the extremity used for the entry of the male element 1.
[0018] When the fitting is to be coupled the tang 4 of the male element 1 is introduced
into the female element 2, by axially sliding each of the ribs 5 in a corresponding
groove 10. When each of said ribs 5 meets part 12 of the corresponding groove 10,
the male element 1 is made to rotate so that the ribs 5 are moved to seats 13. The
sequence of the entry stages of the ribs 5 into the lateral seats 13 is illustrated
in Fig.s 7, 8 and 9; at the beginning of rotation (Fig. 7) of the first inclined part
101 of extremity 15, countering the action of the Belleville washer 16, it goes past
an edge 100 of groove 10; after the inclined part 101 has penetrated completely into
the lateral seat 13 following the partial rotation of the male element 1 (Fig. 8),
the combined action of the Belleville washer 16 and of the second inclined part 102
of extremity 15 causes the complete entry of said rib 5 into its seat; subsequently
the elastic action of the Belleville washer 16 contributes in maintaining said ribs
5 in the corresponding seats 13.
[0019] Fig.s 10, 11 and 12 illustrate the sequence of the exit stages of each rib 5 from
the lateral seats 13; in the initial stage of rotation it is necessary to apply a
certain force to overcome the action of the Belleville washer 16; when the rib 5 is
in the position shown in Fig. 11, the combined action of the washer 16 and of the
inclined part 101 make release easier.
[0020] The release of the fitting element is thus possible only with a direct action on
the part of the operator, who must rotate the male element 1 in a counter direction,
countering the action of the Belleville washer 16 and the resistance opposed by shoulders
14 and extremities 15 of ribs 5, due to their particular shape according to to inclined
planes.
[0021] The fitting of Fig.s 13 to 22 is substantially similar to that of fig.s 1 to 12,
whose same reference numbers are used for corresponding parts and whose detailed description
will not be repeated here.
[0022] As the sole but important variant, it includes a locking device 51 which, when in
the active position, prevents the reciprocal rotation of the male element 1 and of
the female element 2 from the coupling position of Fig. 16 under conditions of force
in this direction due to any twisting actions exerted either manually or by the pressure
of the water on the flexible hose attached to the female element of the fitting.
[0023] The locking device 51 is shown in detail in Fig.s 19 to 22 and comprises a lever-type
casing 52 having an essentially rectangular shape with a central pivot 53 protruding
laterally from the casing itself to define fulcrum extremities 54. The lever-type
casing 52 has an external operating face divided into two sectors 55 and 56 at different
angles of inclination, which are used for the operation of the device, while from
the inside, at one of its angles, the locking pawl 57 is extended.
[0024] As illustrated in Fig.s 13 to 17, the lever-type casing 52 of the locking device
51 is housed in a rectangular seat 58 of external sleeve 8 of the female element 2
and pivoted at this point by the insertion of extremities 54 of the pivot 53 into
corresponding notches 59 of the seat 58. In this condition the locking pawl 57 extends
to a greater or a lesser extent inside one of the lateral seats 13 for receiving ribs
5 of the male element 1 according to the angular position of the lever-type casing
52.
[0025] If the lever-type casing 52 is in the angular position of Fig.s 15 and 17, the pawl
57 extends to a limited degree inside seat 13 and is not in a position to interfere
with the rotation movement of ribs 5 of the male element 1, either in the coupling
stage or in the release stage of the two male and female elements of the fitting.
The locking device 51 is then said to be in the inactive position.
[0026] If, on the other hand, the lever-type casing 52 is in the angular position of Fig.s
14 and 16, the pawl 57 extends to a greater degree inside the seat 13 and does interfere
with the rotation movement of ribs 5, already inserted inside their respective seats
13, so as to prevent its displacement from the coupling position of Fig. 16 to that
of a possible release of Fig. 17. This situation, also illustrated in Fig. 18, ensures
that the fitting is not subject to undesired releases following any twisting actions,
however produced.
1. Male-female fitting element, constituted by a male element (1), comprising a hollow
cylindrical tang (4), having in the axial direction a plurality of radially protruding
ribs (5), and by a female element (2), essentially constituted by a hollow cylindrical
casing (7) with an internal wall provided with a corresponding plurality of axial
grooves (10) for the sliding reception of said ribs (5) of the male element (1), each
of said grooves (10) being flanked by a lateral seat (13) suitable for receiving one
of said respective ribs (5) by rotation of said male element (1) at the end of the
sliding of said ribs (5) in the grooves (10), so that said ribs (5) are held in the
respective seats (13) by the abutment of an extremity (15) of said ribs (5) against
a shoulder (14) of said lateral seat (13), in that in the female element (2) there
being inserted a Belleville washer (16), located at the extremity opposite to the
extremity for the entry of male element (1), said shoulder (14) of each of said lateral
seats (13) being shaped in circumferential direction according to an inclined plane
and one extremity (15) of each corresponding rib (5) being shaped in circumferential
direction according to two inclined planes (101,102) of opposite inclination.
2. Male-female fitting element according to claim 1, characterized in that there is associated
with said female element (2) a locking device (51) suitable for co-operating with
said male element (1) to prevent, when in the active position, the reciprocal rotation
of said elements (2, 1) towards the release condition.
3. Male-female fitting element according to claim 2, characterized in that said locking
device (51) comprises a lever-type casing (52) rotatably housed in a seat (58) of
female element (2) so as to be moveable from an inactive position to an active position
wherein a protruding pawl (57) is inserted into one of said lateral seats (13) so
as to lock a corresponding rib (5) of male element (1) in said seat (13) and thus
prevent the releasing rotation of said male element (1).
1. Männliches-weibliches Paßverbindungsteil umfassend ein männliches Element (1), welches
einen hohlen, zylindrischen Dorn (4) aufweist, und das in axialer Richtung eine Mehrzahl
von radial vorstehenden Rippen (5) hat, und ein weibliches Element (2), welches im
wesentlichen von einem hohlen, zylindrischen Gehäuse (7) mit einer Innenwand gebildet
wird, welche mit einer zugeordneten Vielzahl von axialen Ausnehmungen (10) zur gleitbeweglichen
Aufnahme der Rippen (5) des männlichen Elements (1) versehen ist, wobei jede der Ausnehmungen
(10) durch einen seitlichen Sitz (13) begrenzt ist, welcher zur Aufnahme einer der
zugeordneten Rippen (5) durch Drehen des männlichen Elements (1) an dem Ende der Gleitbewegung
der Rippen (5) in den Ausnehmungen (10) geeignet ist, so daß die Rippen (5) in den
zugeordneten Sitzen (13) dadurch gehalten sind, daß ein Ende (15) der Rippen (5) gegen
eine Schulter (14) des seitlichen Sitzes (13) anliegt, in das weibliche Element (2)
ein Belleville-Dichtungsring (16) eingesetzt ist, welcher an dem Ende liegt, das dem
Ende für den Eintritt des männlichen Elements (1) gegenüberliegt, und wobei die Schulter
(14) jedes seitlichen Sitzes (13) in Umfangsrichtung entsprechend einer geneigten
Ebene ausgebildet ist und ein Ende (15) jeder zugeordneten Rippe (5) in Umfangsrichtung
nach Maßgabe von zwei geneigten Ebenen (101, 102) mit gegensinniger Neigung ausgebildet
ist.
2. Männliches-weibliches Paßverbindungsteil nach Anspruch 1, dadurch gekennzeichnet, daß dem weiblichen Element (2) eine Feststelleinrichtung (51) zugeordnet ist, welche
mit dem männlichen Element (1) zusammenarbeiten kann, um in einer inaktiven Position
eine hin- und hergehende Drehbewegung der Elemente (2, 1) in die Löseposition zu verhindern.
3. Männliches-weibliches Paßverbindungsteil nach Anspruch 2, dadurch gekennzeichnet, daß die Feststelleinrichtung (51) ein hebelförmiges Gehäuse (52) aufweist, welches
drehbeweglich in einem Sitz (58) des weiblichen Elements (2) derart aufgenommen ist,
daß es von einer inaktiven Position zu einer aktiven Position bewegbar ist, wobei
eine vorstehende Klaue (57) in einen der seitlichen Sitze (13) derart eingeführt wird,
daß eine zugeordnete Rippe (5) des männlichen Elements (1) in dem Sitz (3) festgelegt
wird und hierdurch eine Drehbewegung des männlichen Elements (1) in Löserichtung verhindert
wird.
1. Elément de raccordement mâle-femelle, constitué par un élément mâle (1) qui comporte
une queue cylindrique creuse (4) ayant, dans la direction axiale, plusieurs nervures
(5) qui dépassent radialement, et par un élément femelle (2), essentiellement constitué
par une enveloppe cylindrique creuse (7) ayant une paroi interne qui a un nombre correspondant
de gorges axiales (10) destinées à loger par coulissement les nervures (5) de l'élément
mâle (1), chacune des gorges (10) étant disposée à côté d'un siège latéral (13) qui
permet le logement de l'une des nervures respectives (5) par rotation de l'élément
mâle (1) à la fin du coulissement des nervures (5) dans les gorges (10), si bien que
les nervures (5) sont retenues dans les sièges respectifs (13) par butée d'une extrémité
(15) des nervures (5) contre un épaulement (14) du siège latéral (13), une rondelle
Belleville (16) étant introduite dans l'élément femelle (2) et placée à l'extrémité
opposée à l'extrémité d'entrée de l'élément mâle (1), l'épaulement (14) de chaque
siège latéral (13) ayant une configuration, en direction circonférentielle, formant
un plan incliné et une extrémité (15) de chaque nervure correspondante (5) ayant une
configuration, en direction circonférentielle, correspondant à deux plans inclinés
(101, 102) ayant des inclinaisons opposées.
2. Elément de raccordement mâle-femelle selon la revendication 1, caractérisé en ce qu'un
dispositif (51) de blocage est associé à l'élément femelle (2) et est destiné à coopérer
avec l'élément mâle (1) afin que, lorsqu'il est en position active, il empêche la
rotation alternative des éléments (2, 1) vers l'état de libération.
3. Elément de raccordement mâle-femelle selon la revendication 2, caractérisé en ce que
le dispositif de blocage (51) comporte un boîtier (52) en forme de levier, logé dans
un siège (58) de l'élément femelle (2) de manière qu'il puisse tourner et qu'il soit
mobile d'une position inactive à une position active dans laquelle un cliquet en saillie
(57) pénètre dans l'un des sièges latéraux (13) et bloque une nervure correspondante
(5) de l'élément mâle (1) dans le siège (13) et empêche ainsi la rotation qui provoque
la libération de l'élément mâle (1).